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Quantitative analysis and parametric display of regional myocardial mechanics

机译:区域心肌力学的定量分析与参数显示

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Quantitative assessment of regional heart motion has significant potential for more accurate diagnosis of heart disease and/or cardiac irregularities. Local heart motion may be studied from medical imaging sequences. Using functional parametric mapping, regional myocardial motion during a cardiac cycle can be color mapped onto a deformable heart model to obtain better understanding of the structure- to-function relationships in the myocardium, including regional patterns of akinesis or diskinesis associated with ischemia or infarction. In this study, 3D reconstructions were obtained from the Dynamic Spatial Reconstructor at 15 time points throughout one cardiac cycle of pre-infarct and post-infarct hearts. Deformable models were created from the 3D images for each time point of the cardiac cycles. Form these polygonal models, regional excursions and velocities of each vertex representing a unit of myocardium were calculated for successive time-intervals. The calculated results were visualized through model animations and/or specially formatted static images. The time point of regional maximum velocity and excursion of myocardium through the cardiac cycle was displayed using color mapping. The absolute value of regional maximum velocity and maximum excursion were displayed in a similar manner. Using animations, the local myocardial velocity changes were visualized as color changes on the cardiac surface during the cardiac cycle. Moreover, the magnitude and direction of motion for individual segments of myocardium could be displayed. Comparison of these dynamic parametric displays suggest that the ability to encode quantitative functional information on dynamic cardiac anatomy enhances the diagnostic value of 4D images of the heart. Myocardial mechanics quantified this way adds a new dimension to the analysis of cardiac functional disease, including regional patterns of akinesis and diskinesis associated with ischemia and infarction. Similarly, disturbances in regional contractility and filling may be detected and evaluated using such measurements and displays. !115
机译:区域心脏运动的定量评估具有更准确地诊断心脏病和/或心脏不规则的显着潜力。可以从医学成像序列中研究局部心脏动作。使用功能参数映射,心脏循环期间的区域心肌运动可以是颜色映射到可变形的心脏模型上,以更好地理解心肌中的功能关系关系,包括与缺血或梗死相关的Akinesis或Diskinesis的区域模式。在本研究中,在梗死前的一个心脏周期和梗塞后心脏的整个心脏周期中的15个时间点,从动态空间重建获得3D重建。从心脏周期的每个时间点从3D图像创建可变形模型。形成这些多边形模型,为连续的时间间隔计算代表心肌单位的每个顶点的区域偏移和速度。计算结果通过模型动画和/或特殊格式格式的静态图像可视化。使用颜色映射显示通过心动周期的区域最大速度和心肌偏移的时间点。区域最大速度和最大偏移的绝对值以类似的方式显示。使用动画,当地心肌速度变化被可视化为心脏周期中心脏表面上的颜色变化。此外,可以显示用于心肌的各个段的运动的幅度和方向。这些动态参数显示的比较表明,用于编码动态心脏解剖学的定量功能信息的能力增强了心脏4D图像的诊断价值。这种方式量化了心肌机制为心功能疾病分析增加了新的尺寸,包括与缺血和梗死相关的Akinesis和Diskinesis的区域模式。类似地,可以使用这种测量和显示来检测和评估区域收缩和填充中的扰动。 !115

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